## Foundations for Microwave EngineeringAn Instructor's Manual presenting detailed solutions to all the problems in the book is available upon request from the Wiley Makerting Department. |

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### Contents

Introduction | 1 |

Electromagnetic theory ll | 11 |

Derivation of solution for vector potential | 54 |

Copyright | |

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### Common terms and phrases

admittance ampliﬁer amplitude analysis aperture approximate atom attenuation axial axis band Bloch wave boundary conditions capacitance cavity characteristic impedance Chebyshev coaxial line components conducting conductor considered coupler coupling density dielectric direction electric field electromagnetic electron beam equal equation equivalent circuit expression factor ferrite ﬁeld ﬁlter ﬁrst function given gives group velocity hence illustrated in Fig incident input impedance integral klystron length lossless magnetic dipole magnetic field maser matched noise normalized obtain output parameters passband periodic structure phase velocity polarization port power loss ratio Poynting vector propagation constant quarter-wave transformer radiation reactance rectangular guide reﬂection reflection coefficient replaced resonant circuit resonant frequency result shunt signal solution space-charge waves stub surface susceptance taper TE10 mode terminal plane theory tion trans transition transmission line transverse traveling-wave tube vanish vector voltage and current wave impedance wave propagating waveguide wavelength zero